Evaluation of the thermal comfort in different commercial buildings in Guangzhou

IF 3.2 3区 工程技术 Q2 CONSTRUCTION & BUILDING TECHNOLOGY
Yudong Mao, Kaiyue Zhu, Zhiming Zheng, Zhaosong Fang
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引用次数: 0

Abstract

A post-occupancy study of the thermal environment and thermal comfort in office buildings certified with China’s one- to three-star green building label was compared with traditional office buildings. The results showed that the indoor temperature and air movement of both building types met the GB/T 50378, Green Building Evaluation Standard. The green office buildings outperformed conventional office buildings, and occupants had a more comfortable thermal perception and a higher satisfaction level. The three-star buildings were shown to produce the best performance. The comfort temperature range of office workers in green office buildings was about 4°C. The wider comfort temperature range suggests that employees in green office buildings are better adapted to their thermal environment and may have greater potential for energy savings in the design and intelligent operation of air-conditioning systems. The purpose of this study is to gain a more comprehensive understanding of the indoor conditions of green office buildings in China, which may have implications for design decisions on green building practices, and provide guidance for the design and operation of green buildings that can create a better indoor environment with better energy consumption and carbon emission while ensuring indoor thermal comfort.
广州不同商业建筑热舒适性评价
对获得中国一至三星绿色建筑标识的办公建筑与传统办公建筑的使用后热环境和热舒适进行了对比研究。结果表明,两种建筑类型的室内温度和空气流动均满足GB/T 50378《绿色建筑评价标准》的要求。绿色办公建筑表现优于传统办公建筑,居住者有更舒适的热感知和更高的满意度。三星建筑被证明能产生最好的性能。绿色办公建筑中办公人员的舒适温度范围约为4℃。更宽的舒适温度范围表明,绿色办公大楼的员工更能适应其热环境,在空调系统的设计和智能运行方面可能有更大的节能潜力。本研究的目的是更全面地了解中国绿色办公建筑的室内状况,为绿色建筑实践的设计决策提供参考,并为绿色建筑的设计和运营提供指导,在保证室内热舒适的同时,创造更好的室内环境,更好的能耗和碳排放。
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来源期刊
Indoor and Built Environment
Indoor and Built Environment 环境科学-工程:环境
CiteScore
6.40
自引率
25.00%
发文量
130
审稿时长
2.6 months
期刊介绍: Indoor and Built Environment publishes reports on any topic pertaining to the quality of the indoor and built environment, and how these might effect the health, performance, efficiency and comfort of persons living or working there. Topics range from urban infrastructure, design of buildings, and materials used to laboratory studies including building airflow simulations and health effects. This journal is a member of the Committee on Publication Ethics (COPE).
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